Characteristics and plasticity of electrical synaptic transmission.

Q1 Biochemistry, Genetics and Molecular Biology BMC Cell Biology Pub Date : 2016-05-24 DOI:10.1186/s12860-016-0091-y
Sebastian Curti, John O'Brien
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引用次数: 34

Abstract

Electrical synapses are an omnipresent feature of nervous systems, from the simple nerve nets of cnidarians to complex brains of mammals. Formed by gap junction channels between neurons, electrical synapses allow direct transmission of voltage signals between coupled cells. The relative simplicity of this arrangement belies the sophistication of these synapses. Coupling via electrical synapses can be regulated by a variety of mechanisms on times scales ranging from milliseconds to days, and active properties of the coupled neurons can impart emergent properties such as signal amplification, phase shifts and frequency-selective transmission. This article reviews the biophysical characteristics of electrical synapses and some of the core mechanisms that control their plasticity in the vertebrate central nervous system.

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突触电传递的特性和可塑性。
从刺胞动物的简单神经网络到哺乳动物的复杂大脑,电突触是神经系统中无处不在的特征。电突触由神经元之间的间隙连接通道形成,允许电压信号在耦合细胞之间直接传递。这种排列的相对简单掩盖了这些突触的复杂性。通过电突触的耦合可以通过多种机制在毫秒到几天的时间尺度上进行调节,并且耦合神经元的主动特性可以赋予诸如信号放大,相移和频率选择传输等紧急特性。本文综述了脊椎动物中枢神经系统电突触的生物物理特性和控制其可塑性的一些核心机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BMC Cell Biology
BMC Cell Biology 生物-细胞生物学
CiteScore
7.30
自引率
0.00%
发文量
0
审稿时长
12 months
期刊介绍: BMC Molecular and Cell Biology, formerly known as BMC Cell Biology, is an open access journal that considers articles on all aspects of both eukaryotic and prokaryotic cell and molecular biology, including structural and functional cell biology, DNA and RNA in a cellular context and biochemistry, as well as research using both the experimental and theoretical aspects of physics to study biological processes and investigations into the structure of biological macromolecules.
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